Raterman S T, Metz J R, Wagener Frank A D T G, Von den Hoff Johannes W
Radboud Institute of Molecular Life Sciences, Nijmegen, Netherlands.
Department of Dentistry-Orthodontics and Craniofacial Biology, Radboud University Medical Center, Nijmegen, Netherlands.
Front Cell Dev Biol. 2020 Nov 16;8:600926. doi: 10.3389/fcell.2020.600926. eCollection 2020.
The zebrafish is an appealing model organism for investigating the genetic (G) and environmental (E) factors, as well as their interactions (GxE), which contribute to craniofacial malformations. Here, we review zebrafish studies on environmental factors involved in the etiology of craniofacial malformations in humans including maternal smoking, alcohol consumption, nutrition and drug use. As an example, we focus on the (cleft) palate, for which the zebrafish ethmoid plate is a good model. This review highlights the importance of investigating ExE interactions and discusses the variable effects of exposure to environmental factors on craniofacial development depending on dosage, exposure time and developmental stage. Zebrafish also promise to be a good tool to study novel craniofacial teratogens and toxin mixtures. Lastly, we discuss the handful of studies on gene-alcohol interactions using mutant sensitivity screens and reverse genetic techniques. We expect that studies addressing complex interactions (ExE and GxE) in craniofacial malformations will increase in the coming years. These are likely to uncover currently unknown mechanisms with implications for the prevention of craniofacial malformations. The zebrafish appears to be an excellent complementary model with high translational value to study these complex interactions.
斑马鱼是一种用于研究遗传(G)和环境(E)因素及其相互作用(GxE)的有吸引力的模式生物,这些因素会导致颅面畸形。在这里,我们综述了斑马鱼关于人类颅面畸形病因中涉及的环境因素的研究,包括母亲吸烟、饮酒、营养和药物使用。例如,我们重点关注腭裂,斑马鱼的筛骨板是研究腭裂的一个良好模型。本综述强调了研究E×E相互作用的重要性,并讨论了暴露于环境因素对颅面发育的不同影响,这取决于剂量、暴露时间和发育阶段。斑马鱼也有望成为研究新型颅面致畸剂和毒素混合物的良好工具。最后,我们讨论了利用突变体敏感性筛选和反向遗传技术进行的少数基因-酒精相互作用研究。我们预计,未来几年针对颅面畸形中复杂相互作用(E×E和GxE)的研究将会增加。这些研究可能会揭示目前未知的机制,对预防颅面畸形具有重要意义。斑马鱼似乎是研究这些复杂相互作用的具有高转化价值的优秀互补模型。